with 2 supplements. Responses of layer 3 presubicular cells to photoactivation of ATN and RSC fibers
A, Expression of AAV5-Chronos in ATN or RSC.
B, Biocytin labeled layer 3 cells (white) and GFP positive axons (green) from the ATN or RSC. Scale bar 10 µm.
C, Firing pattern of two layer 3 cells receiving inputs from the ATN (cerulean) and the RSC (purple). Insets show current commands.
D, Cluster analysis of physiological parameters for cells tested by stimulating ATN or RSC fibers.
E, Representative EPSCs evoked in layer 3 cells by light stimulation (blue bar) of ATN or RSC inputs. Right, proportion of cells receiving ATN or RSC inputs.
F, Average amplitudes of ATN and RSC induced synaptic currents.
G, Latency of EPSCs evoked by light-stimulation of ATN (n = 24 cells) or RSC fibers (n = 27 cells).
H, EPSPs induced in layer 3 cells (single traces) by stimulating ATN or RSC inputs in absence and presence of 1 µM TTX and 100 µM 4-AP.
I, EPSCs induced by stimulating ATN or RSC fibers in the absence and presence of 100 µM APV and APV + 10 µM NBQX. Holding potential +40 mV.
J, Voltage-clamp responses of layer 3 cells to 20 Hz train stimulations of ATN (le.ft) and RSC (right) inputs. Insets show EPSCs in response to the first two stimuli.
K, oEPSC amplitudes for 10 ATN or RSC fiber stimuli at 20 Hz. n = 15 neurons. Short middle line, mean; Min to max and quartiles.
L, Paired-pulse ratio (PPR) and 10/1 ratio (ratio between 10th and 1st event amplitudes) for ATN or RSC inputs. Wilcoxon matched-pairs signed rank test: ATN PPR vs 10/1 **** p < 0.0001, RSC PPR vs 10/1 *** p = 0.0001.
M, Current clamp traces showing action potentials and EPSPs evoked by 10 stimuli at 20 Hz. N, Spiking probability during trains of 10 stimuli. ATN, n = 6, RSC, n = 12. Full line, median; short line, mean; Min to max and quartiles. In K and N, * p < 0.05, ** p < 0.01, *** p < 0.001, **** p < 0.0001 from Friedman’s test followed by Dunn’s post-hoc test.
O, oEPSP amplitudes for trains of 5 stimuli at 20 Hz.
See also Figure 2—figure supplements 1 and 2.